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Function of Tetra (4-Aminophenyl) Porphyrin in Altering the Electronic Performances of Reduced Graphene Oxide-Based Field Effect Transistor

机译:四(4-氨基苯基)卟啉在改变基于氧化石墨烯的场效应晶体管的电子性能中的作用

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摘要

Porphyrin functionalized reduced graphene oxide (rGO) is attractive for multi-disciplinary research studies, and its improvements for an rGO-based field effect transistor (rGO-FET) were exploited to realize ultrasensitive biochemical and clinical assay. Although it was believed that the hybrids of porphyrin and rGO can make positive impacts on the rGO-FET’s electronic performances, the understandings of its functions are still piecemeal. Herein, the reduced mixtures of tetra (4-aminophenyl) porphyrin (TAP), GO (TAP-rGO), and the FET channeled by them are examined to throw a light on the possible approaches through which TAP affects rGO’s quality and its carrier mobilities. A TAP-caused game relationship is established by deliberating about the results of the intentionally altered experimental conditions, including TAP contents and the overmixing pretreatment. The p-type doping deduction for the right-shifted ambipolar transfer characteristic curves is evidenced by X-ray photoelectron spectroscopy (XPS). The problems posed by the TAP-induced FET features’ improvement, regression, and deterioration are clarified by the integrated proofs from Raman fingerprints, the amide and carboxyl groups’ changing trajectory found by C1s XPS core spectra, and the enlarged few-layer graphene morphology from atomic force microscope and transmission electron microscope. We hope that this effort will provide some constructive recommendations for producing low-cost graphene derivatives and promoting their applications in FET-like electronic components.
机译:卟啉功能化还原氧化石墨烯(rGO)在多学科研究中很有吸引力,并利用其对基于rGO的场效应晶体管(rGO-FET)的改进来实现超灵敏的生化和临床测定。尽管人们认为卟啉和rGO的混合物可以对rGO-FET的电子性能产生积极的影响,但对其功能的理解仍然是零碎的。在本文中,研究了四(4-氨基苯基)卟啉(TAP),GO(TAP-rGO)和由它们引导的FET的还原混合物,以揭示TAP影响rGO质量及其载流子迁移率的可能方法。 。通过研究故意改变的实验条件(包括TAP含量和过度混合预处理)的结果来建立TAP引起的游戏关系。 X射线光电子能谱(XPS)证明了右移双极转移特性曲线的p型掺杂推断。通过拉曼指纹,C1s XPS核心光谱发现的酰胺和羧基变化轨迹以及扩大的几层石墨烯形态的综合证据,澄清了TAP诱导的FET功能改善,退化和劣化所带来的问题。从原子力显微镜和透射电子显微镜。我们希望这项工作将为生产低成本石墨烯衍生物并促进其在类似FET的电子组件中的应用提供一些建设性的建议。

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